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Criticality Study for Large Masses of Low Enriched Uranium Samples in an Active Well Neutron Coincidence Counter

机译:有源井中子重合计数器中大量低浓铀样品的临界度研究

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A criticality study has been conducted while verifying large masses of Low Enriched Uranium (LEU) samples in an Active Well Neutron Coincidence Counter (AWCC). Fissile material mass limits were determined for some setup conditions to assure safe operation of the counter. The work was performed at the Department of Safeguards and Physical Protection, Nuclear and Radiological Regulatory Authority (ENRRA), during the period from February to December 2015. The AWCC device was assumed to be employed in verification activities including measurements of different Nuclear Material (NM) samples in different setup configurations, forms and conditions. The MCNP5 code was used to estimate keff of relatively large masses of LEU in different forms including uranium oxide powder, compacts and fuel rods. All calculations were performed assuming the operation of the AWCC in active thermal mode at maximum capacity of its cavity. The uranium powder samples were modeled as dry and with different values of water contents. For compacts and fuel rods, the calculations were performed with and without the existence of moderating materials in the cavity of the device. All studied cases were found to be subcritical except for a few cases of uranium oxide powder containing water. Criticality was reached for samples containing 235U masses ranged between 1.5 to 8.0 kg with corresponding percent water content from 67 to 25. The estimated mass limits of LEU samples with certain characteristics that could be safely verified in the device are presented.
机译:在有源井中子重合计数器(AWCC)中验证大量低浓铀(LEU)样品的同时,进行了临界度研究。确定了某些设置条件下的易裂变材料质量极限,以确保计数器安全运行。该工作在2015年2月至2015年12月期间在核安全和辐射监管局保障与实物保护局(ENRRA)进行。假定AWCC设备用于验证活动,包括不同核材料(NM)的测量。 )以不同的设置配置,形式和条件进行采样。 MCNP5代码用于估算相对较大质量的LEU,其形式不同,包括氧化铀粉末,压块和燃料棒,k eff 。假定AWCC在其腔的最大容量下处于主动热模式下运行,所有计算均进行。将铀粉样品建模为干燥且水分含量不同的模型。对于紧凑型和燃料棒,在设备腔体中存在和不存在缓和材料的情况下进行了计算。除少数几例含水铀氧化物粉末外,所有研究案例均属次临界状态。包含 235 U质量范围在1.5至8.0 kg之间且相应百分比水含量从67%至25之间的样品达到了临界状态。某些特征的LEU样品的估计质量极限可以在设备中安全验证被提出。

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